In situ UV-cured composite electrolytes for highly efficient quasi-solid-state lithium ion batteries with wide temperature range applications

被引:1
|
作者
Zhou, Pengcheng [1 ]
Liu, Yuxian [2 ]
Chen, Jian [1 ]
Lu, Shouqiang [1 ]
Li, Huiyang [3 ]
机构
[1] Guangdong Shunde Innovat Design Inst, Foshan 528300, Peoples R China
[2] Peking Univ, Sch Integrated Circuits, Beijing 100871, Peoples R China
[3] Zhongkai Univ Agr & Engn, Coll Chem & Chem Engn, Guangzhou 510275, Peoples R China
关键词
LI-METAL BATTERIES; POLYMER ELECTROLYTES; RECENT PROGRESS; LIPON; PEO;
D O I
10.1039/d2se01679f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The replacement of flammable electrolytes with non-flammable electrolytes is the ultimate solution for addressing the safety concerns related to lithium-ion batteries. In this context, inorganic/polymer composite electrolytes (IPCEs) offer the advantages of high flexibility, stability, ionic conductivity, and interfacial compatibility and therefore have received growing research attention. Herein, a novel IPCE based on a Norland optical adhesive (NOA81) and a Li-rich fast ion conductor Li10.7Al0.24La3Zr2O12 for quasi-solid-state lithium-ion batteries was designed and synthesized via solvent-free in situ ultraviolet (UV) curing. In this system, polyethylene oxide and poly(vinylidene fluoride-co-hexafluoropropylene) were used to modify the polymers, and sebaconitrile was used as a plasticizer. Screen printing was also employed during the manufacturing process. The composite electrolyte displayed a lithium-ion conductivity of 1.3 x 10(-4) S cm(-1) at 25 degrees C and sustained good stability up to 5.43 V (vs. Li+/Li). Lithium-ion batteries fabricated using the composite electrolyte, a LiNi1/3Mn1/3Co1/3O2 (NMC111) cathode, and a Li4Ti5O12 (LTO) anode achieved a specific capacity of 128 mA h g(-1) and exhibited an 80% capacity retention after 154 cycles at 0.2C under testing at 25 degrees C. In addition, this battery exhibited an extremely high coulombic efficiency (>99.5%) over its entire cycle life. The NMC111 loading in the cathode reached 11.7 mg cm(-2), which is comparable to those of commercialized electrodes. Significantly, the battery retained excellent electrochemical performances over a wide temperature range from 25 to 100 degrees C and achieved the highest specific capacity of 143 mA h g(-1) at 45 degrees C.
引用
收藏
页码:986 / 995
页数:10
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